Instance 80_10 using GSC + AtMostSeqCard
NODES
TIME
avg
min
avg
min
d_l_l_o_gsam 299.60 296.00 2.71 2.69
r_l_l_c_gsam 176.00 176.00 1.12 1.10
s_l_m_c_gsam 170.60 170.00 0.95 0.95
pq_l_m_o_gsam 281.00 281.00 3.03 3.02
s_e_l_c_gsam 177.00 177.00 1.12 1.12
d_s_m_c_gsam 169.60 168.00 1.02 1.00
r_e_m_c_gsam 175.20 175.00 1.00 0.98
l_l_l_o_gsam 297.80 297.00 2.18 2.17
s_e_m_c_gsam 175.20 175.00 0.98 0.98
pq_s_m_c_gsam 154.20 154.00 0.95 0.95
l_e_l_c_gsam 177.00 177.00 1.13 1.12
s_l_m_o_gsam 278.00 278.00 2.94 2.92
d_s_l_c_gsam 173.20 170.00 1.08 1.05
s_s_m_c_gsam 175.20 175.00 0.98 0.97
pq_e_m_c_gsam 152.80 152.00 0.96 0.96
l_l_l_c_gsam 176.00 176.00 1.12 1.11
r_e_l_c_gsam 177.00 177.00 1.14 1.14
pq_s_l_c_gsam 154.00 154.00 1.07 1.07
l_s_m_c_gsam 179.80 179.00 1.00 0.99
s_l_l_c_gsam 176.00 176.00 1.10 1.09
l_e_m_c_gsam 179.80 179.00 1.00 0.99
l_s_l_c_gsam 177.00 177.00 1.13 1.12
r_l_m_o_gsam 297.20 297.00 2.30 2.29
mo_s_m_c_gsam 1181.80 151.00 1.74 1.05
pq_l_l_c_gsam 151.20 150.00 1.06 1.05
d_l_m_c_gsam 173.40 173.00 1.05 1.04
d_e_l_c_gsam 171.40 171.00 1.15 1.14
s_s_l_c_gsam 177.00 177.00 1.12 1.12
r_l_l_o_gsam 295.00 295.00 2.42 2.41
pq_l_m_c_gsam 152.80 152.00 0.96 0.96
r_s_l_c_gsam 177.00 177.00 1.14 1.13
d_l_l_c_gsam 174.40 171.00 1.16 1.15
s_l_l_o_gsam 275.00 275.00 3.24 3.23
mo_s_l_c_gsam 25387.80 144.00 20.37 1.06
r_s_m_c_gsam 175.20 175.00 0.99 0.98
pq_e_l_c_gsam 151.20 150.00 1.06 1.05
r_l_m_c_gsam 172.80 172.00 1.26 0.95
d_l_m_o_gsam 297.60 296.00 2.56 2.55
l_l_m_o_gsam 296.00 296.00 2.00 2.00
d_e_m_c_gsam 171.20 169.00 1.04 1.02
l_l_m_c_gsam 174.20 174.00 0.97 0.96
pq_l_l_o_gsam 275.00 275.00 3.32 3.31

Best configurations

['d_e_l_c_gsam', 'd_e_m_c_gsam', 'd_l_l_c_gsam', 'd_l_l_o_gsam', 'd_l_m_c_gsam', 'd_l_m_o_gsam', 'd_s_l_c_gsam', 'd_s_m_c_gsam', 'l_e_l_c_gsam', 'l_e_m_c_gsam', 'l_l_l_c_gsam', 'l_l_l_o_gsam', 'l_l_m_c_gsam', 'l_l_m_o_gsam', 'l_s_l_c_gsam', 'l_s_m_c_gsam', 'mo_s_l_c_gsam', 'mo_s_m_c_gsam', 'pq_e_l_c_gsam', 'pq_e_m_c_gsam', 'pq_l_l_c_gsam', 'pq_l_l_o_gsam', 'pq_l_m_c_gsam', 'pq_l_m_o_gsam', 'pq_s_l_c_gsam', 'pq_s_m_c_gsam', 'r_e_l_c_gsam', 'r_e_m_c_gsam', 'r_l_l_c_gsam', 'r_l_l_o_gsam', 'r_l_m_c_gsam', 'r_l_m_o_gsam', 'r_s_l_c_gsam', 'r_s_m_c_gsam', 's_e_l_c_gsam', 's_e_m_c_gsam', 's_l_l_c_gsam', 's_l_l_o_gsam', 's_l_m_c_gsam', 's_l_m_o_gsam', 's_s_l_c_gsam', 's_s_m_c_gsam']

Description

Each table represents some statics related to given configuration. A configuration is denoted by A_B_C_D_E where :
  1. A is the selection criteria. We denote by
    • mo : Max option
    • pq : The capacity q\p
    • d : The residual demand
    • l : The load
    • s : The slack
    • r : The usage rate
  2. B is the aggregation function. We denote by
    • l : Lexicographic order
    • s : Sum of the elements
    • e : Euclidean norm
  3. C is the exploration criteria. We denote by
    • l : Lexicographic exploration
    • m : Middle towars sides
  4. D is the Branching parameter. We denote by
    • o : Option
    • c : Class
  5. E is the filtering model. We denote by
    • n : The default model using sum constraints
    • am : The model using the AtMostSeqCard Constraint
    • gs : The model using the Global Sequencing Constraint (GSC)
    • gsam : The model combining AtMostSeqCard+GSC
    • f : The model using the new filtering algorithm